Aizawa Hidenori, Bianco Isaac H, Hamaoka Takanori, Miyashita Toshio, Uemura Osamu, Concha Miguel L, Russell Claire, Wilson Stephen W, Okamoto Hitoshi
Laboratory for Developmental Gene Regulation, RIKEN Brain Science Institute, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
Curr Biol. 2005 Feb 8;15(3):238-43. doi: 10.1016/j.cub.2005.01.014.
The habenulae are part of an evolutionarily highly conserved limbic-system conduction pathway that connects telencephalic nuclei to the interpeduncular nucleus (IPN) of the midbrain . In zebrafish, unilateral activation of the Nodal signaling pathway in the left brain specifies the laterality of the asymmetry of habenular size . We show "laterotopy" in the habenulo-interpeduncular projection in zebrafish, i.e., the stereotypic, topographic projection of left-sided habenular axons to the dorsal region of the IPN and of right-sided habenular axons to the ventral IPN. This asymmetric projection is accounted for by a prominent left-right (LR) difference in the size ratio of the medial and lateral habenular sub-nuclei, each of which specifically projects either to ventral or dorsal IPN targets. Asymmetric Nodal signaling directs the orientation of laterotopy but is dispensable for the establishment of laterotopy itself. Our results reveal a mechanism by which information distributed between left and right sides of the brain can be transmitted bilaterally without loss of LR coding, which may play a crucial role in functional lateralization of the vertebrate brain .
缰核是进化上高度保守的边缘系统传导通路的一部分,该通路将端脑核与中脑的脚间核(IPN)相连。在斑马鱼中,左脑结节信号通路的单侧激活决定了缰核大小不对称的方向。我们在斑马鱼的缰核 - 脚间核投射中发现了“侧别定位”现象,即左侧缰核轴突向脚间核背侧区域、右侧缰核轴突向脚间核腹侧区域的刻板、拓扑投射。这种不对称投射是由内侧和外侧缰核亚核大小比例的显著左右差异造成的,每个亚核分别特异性地投射到腹侧或背侧的脚间核靶点。不对称的结节信号指导侧别定位的方向,但对于侧别定位本身的建立并非必需。我们的结果揭示了一种机制,通过该机制,分布在脑左右两侧的信息可以双侧传递而不丢失左右编码,这可能在脊椎动物脑的功能侧化中起关键作用。